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Microbial Degradation of Clomazone under Simulated California Rice Field Conditions

机译:模拟加州稻田条件下广灭灵的微生物降解

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Clomazone (trade names Cerano and Command) is a popular herbicide used on California rice fields to control aquatic weeds. Its physicochemical characteristics indicate that it will persist primarily in the water column, where microbial degradation may drive its environmental fate. The objectives were to determine microbial degradation rates and compare the metabolic products under aerobic and anaerobic conditions similar to those in California rice fields during the summer. Time-series samples were extracted and analyzed by LC/MS/MS. Metabolic profiling revealed the following clomazone-derived transitions: m/z 240→ 125 (clomazone), mlz 242→ 125 (ring-open clomazone), m/z 256→ 125 (5-hydroxyclomazone), m/z 256→ 141 (aromatic hydroxyclomazone), mlz 268→ 125 (unknown metabolite), and mlz 272→ 141 (4'5-dihydroxyclomazone). Results indicate an anaerobic half-life of 7.9 days, with ring-open clomazone reaching 67.4% of application at 38 days. Aerobically, clomazone degraded more slowly (t_(1/2) = 47.3 days), forming mostly soil-bound residues. Thus, under summer conditions, clomazone is likely to dissipate rapidly from fields via anaerobic degradation.
机译:Clomazone(商品名Cerano和Command)是一种流行的除草剂,用于加利福尼亚稻田以控制水生杂草。其理化特性表明它将主要存在于水柱中,微生物降解可能会驱动其环境命运。目的是确定微生物降解率,并在有氧和无氧条件下(与夏季加利福尼亚稻田相似)比较代谢产物。提取时间序列样本并通过LC / MS / MS分析。代谢谱分析显示了以下源自广灭灵的转变:m / z 240→125(clomazone),mlz 242→125(开环广灭灵),m / z 256→125(5-hydroxyclomazone),m / z 256→141(芳族羟基氯马酮),mlz 268→125(未知代谢物)和mlz 272→141(4'5-二羟基氯马酮)。结果表明厌氧半衰期为7.9天,开环的广灭灵在38天时达到施用量的67.4%。在有氧条件下,广灭灵降解速度较慢(t_(1/2)= 47.3天),主要形成与土壤结合的残留物。因此,在夏季条件下,广灭灵可能会通过厌氧降解而迅速从田间消散。

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